首页 | 本学科首页   官方微博 | 高级检索  
     检索      

银川市典型湖泊沉积物细菌群落结构及其对重金属的响应关系
引用本文:蒙俊杰,刘双羽,邱小琮,周瑞娟.银川市典型湖泊沉积物细菌群落结构及其对重金属的响应关系[J].环境科学,2024,45(5):2727-2740.
作者姓名:蒙俊杰  刘双羽  邱小琮  周瑞娟
作者单位:宁夏大学土木与水利工程学院, 银川 750021;宁夏大学生命科学学院, 银川 750021;宁夏回族自治区生态环境监测中心, 银川 750000
基金项目:宁夏高等学校一流学科建设(水利工程)项目(NXYLXK2021A03);宁夏大学研究生创新项目(CXXM202241);宁夏回族自治区生态环境厅科研项目(2022015)
摘    要:湖泊湿地是极其重要而又特殊的生态系统,在区域水资源调蓄、环境保护和生物多样性维持等方面具有重要意义.沉积物细菌是湖泊生态系统重要的组成部分,是湖泊生物地球化学循环的主要驱动力.为探明银川市典型湖泊沉积物细菌的群落结构及其影响因素,选取银川市3个典型湖泊(阅海湖、鸣翠湖和犀牛湖)为研究对象,于2021年1月、4月、7月和10月采集表层沉积物,应用16S rDNA高通量测序技术研究沉积物细菌群落组成,并探究其与重金属之间的响应关系.结果表明,银川市3个典型湖泊沉积物重金属生态危害系数远小于40,生态危害指数远小于150,危害程度均为生态轻微危害.3个湖泊的细菌群落多样性无显著差异,但各湖泊不同季节多样性有显著变化,群落组成也存在显著差异.阅海湖、鸣翠湖和犀牛湖的优势种菌门(相对丰度排名前3)均为:变形菌门(Proteobacteria)、拟杆菌门(Bacteroidetes)和绿弯菌门(Chloroflexi),优势下级阶元为γ-变形菌纲(Gammaproteobacteria)、α-变形菌纲(Alphaproteobacteria)和δ-变形菌纲(Deltaproteobacteria).银川市典型湖泊门水平分类上出现的主要差异物种为变形菌门(Proteobacteria)、拟杆菌门(Bacteroidetes)、广古菌门(Euryarchaeota)、厚壁菌门(Firmicutes)、放线菌门(Actinobacteria)和酸杆菌门(Acidobacteria).阅海湖沉积物细菌群落结构与Cu、Fe、Mn、Zn、As和Pb显著相关,鸣翠湖沉积物细菌群落结构与Fe、Pb和Cr显著相关,犀牛湖沉积物细菌群落结构与重金属相关关系不显著.沉积物重金属的种类和含量对银川市阅海湖和鸣翠湖沉积物细菌群落结构有显著影响,是引起湖泊沉积物细菌群落结构变化的重要环境因子.

关 键 词:沉积物  细菌  群落结构  重金属  响应  高通量测序
收稿时间:2023/5/28 0:00:00
修稿时间:2023/8/7 0:00:00

Bacterial Community Structure of Typical Lake Sediments in Yinchuan City and Its Response to Heavy Metals
MENG Jun-jie,LIU Shuang-yu,QIU Xiao-cong,ZHOU Rui-juan.Bacterial Community Structure of Typical Lake Sediments in Yinchuan City and Its Response to Heavy Metals[J].Chinese Journal of Environmental Science,2024,45(5):2727-2740.
Authors:MENG Jun-jie  LIU Shuang-yu  QIU Xiao-cong  ZHOU Rui-juan
Institution:School of Civil and Hydraulic Engineering, Ningxia University, Yinchuan 750021, China;School of Life Science, Ningxia University, Yinchuan 750021, China; Ningxia Environment Monitoring Center, Yinchuan 750000, China
Abstract:Lake wetlands are extremely important and special ecosystems, which are important for regional water resource storage, environmental protection, and biodiversity maintenance. Sediment bacteria are an important component of lake ecosystems and are a major driver of biogeochemical cycling in lakes. In order to investigate the community structure of bacteria in typical lake sediments in Yinchuan City and their influencing factors, three typical lakes in Yinchuan City (Yuehai Lake, Mingcui Lake, and Xiniu Lake) were selected for the study and surface sediments were collected in January, April, July, and October 2021. The composition of the sediment bacterial community was examined using 16S rDNA high-throughput sequencing technology, and the response relationships between them and heavy metals were explored. The results showed that the ecological hazard coefficient for heavy metals in the sediments of three typical lakes in Yinchuan City was far less than 40, and the ecological hazard index was far less than 150, all of which indicated a minor ecological hazard. There were no significant differences in bacterial community diversity among the three lakes, but there were significant variations in diversity among the lakes in different seasons and significant differences in community composition. The dominant phyla (top three in terms of relative abundance) in Yuehai Lake, Mingcui Lake, and Xiniu Lake were Proteobacteria, Bacteroidetes, and Chloroflexi. The dominant lower orders were Gammaproteobacteria, Alphaproteobacteria, and Deltaproteobacteria. The main divergent species that occurred at the phylum level in typical lakes in Yinchuan were Proteobacteria, Bacteroidetes, Euryarchaeota, Firmicutes, Actinobacteria, and Acidobacteria. The sediment bacterial community structure of Yuehai Lake was significantly correlated with Cu, Fe, Mn, Zn, As, and Pb; the sediment bacterial community structure of Lake Mingcui was significantly correlated with Fe, Pb, and Cr; and the sediment bacterial community structure of Xiniu Lake was not significantly correlated with heavy metals. The types and contents of sediment heavy metals had a significant effect on the bacterial community structure of sediments in Yinchuan Yuehai Lake and Mingcui Lake and were important environmental factors that caused changes in the bacterial community structure of lake sediments.
Keywords:sediment  bacteria  community structure  heavy metals  response  high-throughput sequencing
点击此处可从《环境科学》浏览原始摘要信息
点击此处可从《环境科学》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号